Aerodynamic Optimization of the Sizing and Blade Designs of Hovering Corotating Coaxial Rotors

IF 1.4 4区 工程技术 Q2 ENGINEERING, AEROSPACE
Keen Ian Chan
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引用次数: 0

Abstract

Corotating coaxial rotors are seeing renewed interest in distributed electric propulsion systems and electric vertical take-off and landing (eVTOL) aircraft. The recent literature reports many interesting investigations, using prescribed rotor blades, into the flow phenomena as well as aerodynamic and aeroacoustic benefits of corotating rotors. However, the subject of the design of blade geometries, optimized to a design goal, for corotating rotors is currently lacking in the literature. This paper is written from such a design perspective, by extending a previous generalized approach to the aerodynamic optimization of counterrotating rotors to corotating rotors. The previous requirement for upper and lower counterrotating rotor torques to be equal can now be lifted in the case of corotating rotors, enabling improved versatility in the optimization of corotating blade designs. The optimization is demonstrated on an application example to address the conflicting conditions that index angles (high) for aeroacoustic benefits of reduced noise are at odds with those (low) for aerodynamic efficiency. The approach demonstrated in this paper is to set the index angle for reduced noise and then recover back the aerodynamic efficiency by using the newly developed aerodynamic optimization technique.
悬停同轴旋翼尺寸与叶片设计的气动优化
同轴旋翼在分布式电力推进系统和电动垂直起降(eVTOL)飞机上重新引起了人们的兴趣。最近的文献报道了许多有趣的研究,使用规定的转子叶片,进入流动现象以及旋转转子的气动和气动声学效益。然而,叶片几何形状的设计,优化到一个设计目标,旋转转子的主题是目前缺乏文献。本文就是从这样的设计角度出发,将以往对反旋转转子气动优化的一般方法扩展到旋转转子。以前对上下反旋转转子扭矩相等的要求现在可以在旋转转子的情况下解除,从而提高了旋转叶片设计优化的通用性。通过一个应用实例,证明了该优化方法可以解决降噪的气动声学效益的折射率(大)与气动效率的折射率(小)不一致的矛盾条件。本文所论证的方法是利用新发展的气动优化技术,通过设定折射率来降低噪声,从而恢复气动效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of the American Helicopter Society
Journal of the American Helicopter Society 工程技术-工程:宇航
CiteScore
4.10
自引率
33.30%
发文量
36
审稿时长
>12 weeks
期刊介绍: The Journal of the American Helicopter Society is a peer-reviewed technical journal published quarterly (January, April, July and October) by AHS — The Vertical Flight Society. It is the world''s only scientific journal dedicated to vertical flight technology and is available in print and online. The Journal publishes original technical papers dealing with theory and practice of vertical flight. The Journal seeks to foster the exchange of significant new ideas and information about helicopters and V/STOL aircraft. The scope of the Journal covers the full range of research, analysis, design, manufacturing, test, operations, and support. A constantly growing list of specialty areas is included within that scope. These range from the classical specialties like aerodynamic, dynamics and structures to more recent priorities such as acoustics, materials and signature reduction and to operational issues such as design criteria, safety and reliability. (Note: semi- and nontechnical articles of more general interest reporting current events or experiences should be sent to the VFS magazine
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